Energy storage battery box delivery multifunctional rack

CN224782599UActive Publication Date: 2026-09-22FUJIAN JUNPENG COMM TECH
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Patent Information

Application Number
CN202522322867.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-09-22
Estimated Expiration
2035-11-03

AI Technical Summary

Technical Problem

传统托盘多为单层放置,或仅能进行有限的、不稳定的堆叠,这导致在集装箱运输或货车运输中,空间利用率低,运输成本高昂,并且传统托盘在堆叠时,上下层之间缺乏可靠的定位和锁止机构,在运输颠簸或吊装过程中极易发生滑动、倾倒,存在严重的安全隐患,从而影响电池箱的运输;

Benefits of technology

[0010]综上所述,本实用新型的技术效果和优点:该储能电池箱出货多功能料架,通过固定组件对电池箱进行限位固定,在固定组件的作用下,将多个电池箱堆叠在支撑组件的顶部,从而可以同时对多个电池箱进行存放,通过固定组件对电池箱进行分隔,从而有效的使电池箱进行堆放,便于电池箱的输送。

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Abstract

The utility model discloses a kind of energy storage battery box shipment multifunctional rack, belong to battery box technical field, including support assembly, the top of support assembly is fixedly connected with fixed component, the inside of fixed component is provided with battery box, support assembly includes fixed frame, the fixed component includes the moving seat bolted in the top of fixed frame, the inside fixedly connected with fixed seat of moving seat, the top of fixed seat is fixedly connected with fixed plate, the outer side wall of fixed plate is bolted with first locating block and second locating block.The energy storage battery box shipment multifunctional rack, the battery box is fixed by fixed component, under the action of fixed component, multiple battery boxes are stacked on the top of support assembly, so that multiple battery boxes can be stored simultaneously, the battery box is separated by fixed component, so that the battery box is effectively stacked, facilitating the conveying of battery box.
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Description

Technical Field

[0001] This utility model belongs to the field of battery box technology, specifically, it relates to a multi-functional material rack for shipping energy storage battery boxes. Background Technology

[0002] As the global energy structure shifts towards cleaner and lower-carbon energy, energy storage technology, especially electrochemical energy storage represented by lithium batteries, is experiencing rapid development. Energy storage systems typically consist of a large number of energy storage battery boxes. After production, these battery boxes need to undergo warehousing, transportation, and final installation and deployment at the project site. In the entire logistics and installation process of energy storage battery boxes, racks are an indispensable key piece of equipment. Traditional pallets are mostly placed in a single layer or can only be stacked in a limited and unstable manner. This results in low space utilization and high transportation costs in container or truck transportation. Furthermore, when traditional pallets are stacked, there is a lack of reliable positioning and locking mechanisms between the upper and lower layers. They are prone to sliding and tipping over during transportation or hoisting, posing serious safety hazards and affecting the transportation of battery boxes. To address the aforementioned issues, this application proposes a multi-functional rack for shipping energy storage battery boxes. Utility Model Content

[0003] In response to the problems in related technologies, this utility model proposes a multi-functional rack for shipping energy storage battery boxes to overcome the aforementioned technical problems existing in the prior art.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: A multi-functional rack for shipping energy storage battery boxes includes a support assembly, a fixing assembly fixedly connected to the top of the support assembly, a battery box disposed inside the fixing assembly, the support assembly including a fixing frame, the fixing assembly including a movable seat bolted to the top of the fixing frame, a fixing seat fixedly connected inside the movable seat, a fixing plate fixedly connected to the top of the fixing seat, and a first positioning block and a second positioning block bolted to the outer wall of the fixing plate.

[0005] Preferably, the outer wall of the fixing plate is threaded with a positioning bolt, the adjacent surfaces of the second positioning block and the first positioning block are in contact with the battery box, and the end of the positioning bolt near the battery box is in contact with the battery box.

[0006] Preferably, the top of the first positioning block is fitted with a partition rod, and the top of the second positioning block is threaded with a fixing bolt, which is used to fix the second positioning block, the partition rod and the first positioning block.

[0007] Preferably, the top of the fixing frame is threadedly connected to an adjusting seat, and a positioning seat is fixedly connected inside the adjusting seat, the positioning seat being in contact with the battery box.

[0008] Preferably, the battery box is disposed between the first positioning block and the second positioning block, and a fixing hole is provided on the top of the battery box.

[0009] Preferably, a support frame is fixedly connected to the bottom of the fixed frame, and sliding seats are fixedly connected to the four corners of the fixed frame. An adjusting rod is slidably connected inside the sliding seat, a positioning groove is provided on the outer side wall of the sliding seat, and a support leg is fixedly connected to the bottom of the adjusting rod.

[0010] In summary, the technical effects and advantages of this utility model are as follows: This multi-functional rack for shipping energy storage battery boxes uses a fixing component to limit and fix the battery boxes. Under the action of the fixing component, multiple battery boxes are stacked on top of the supporting component, so that multiple battery boxes can be stored at the same time. The fixing component separates the battery boxes, thereby effectively stacking the battery boxes and facilitating their transportation. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the support frame and related structures of this utility model; Figure 3 This is a schematic diagram of the fixing component and related structures of this utility model.

[0012] In the diagram: 1. Support assembly; 101. Fixing frame; 102. Support frame; 103. Sliding seat; 104. Adjusting rod; 105. Positioning groove; 106. Support leg; 2. Battery box; 3. Fixing assembly; 301. Moving seat; 302. Fixing seat; 303. Fixing plate; 304. First positioning block; 305. Positioning bolt; 306. Second positioning block; 307. Divider rod; 308. Fixing bolt; 309. Adjusting seat; 310. Positioning seat; 4. Fixing hole. Detailed Implementation

[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0014] Reference Figure 1-3A multi-functional rack for shipping energy storage battery boxes includes a support component 1, a fixing component 3 fixedly connected to the top of the support component 1, and a battery box 2 disposed inside the fixing component 3. The support component 1 includes a fixing frame 101, and the fixing component 3 includes a movable seat 301 bolted to the top of the fixing frame 101. A fixing seat 302 is fixedly connected inside the movable seat 301, and a fixing plate 303 is fixedly connected to the top of the fixing seat 302. A first positioning block 304 and a second positioning block 306 are bolted to the outer wall of the fixing plate 303. The fixing component 3 supports and limits the battery box 2, allowing the battery box 2 to be placed inside the support component 1. Under the separation of the fixing component 3, multiple battery boxes 2 can be stacked and stored, which can effectively facilitate the transportation of multiple battery boxes 2 and effectively prevent the battery boxes 2 from being squeezed and damaged.

[0015] Reference Figure 2-3 The outer wall of the fixing plate 303 is threaded with a positioning bolt 305. The adjacent surfaces of the second positioning block 306 and the first positioning block 304 are in contact with the battery box 2. The end of the positioning bolt 305 near the battery box 2 is in contact with the battery box 2. The positioning bolt 305 is connected to the battery box 2, thereby limiting the battery box 2 by the first positioning block 304 and the second positioning block 306, so that the battery box 2 can be installed and fixed in the existing way, and multiple battery boxes 2 can be stacked.

[0016] Reference Figure 3 The top of the first positioning block 304 is fitted with a separator rod 307, and the top of the second positioning block 306 is threaded with a fixing bolt 308. The fixing bolt 308 is used to fix the second positioning block 306, the separator rod 307 and the first positioning block 304. The separator rod 307 is located between the first positioning blocks 304 and the second positioning blocks 306 in different groups, so that the separator rod 307 can separate multiple battery boxes 2. The weight of the battery box 2 is transmitted to the inside of the support component 1 through the fixing component 3, which can effectively prevent the bottom battery box 2 from being squeezed and thus damaged.

[0017] Reference Figure 2 The top of the fixing frame 101 is threadedly connected to an adjusting seat 309, and a positioning seat 310 is fixedly connected inside the adjusting seat 309. The positioning seat 310 fits against the battery box 2. The adjusting seat 309 and the positioning seat 310 installed on the top of the fixing frame 101 limit the two sides of the battery box 2, thereby effectively limiting and fixing the battery box 2 around its perimeter, and thus effectively preventing the battery box 2 from shaking after being limited.

[0018] Reference Figure 1The battery box 2 is positioned between the first positioning block 304 and the second positioning block 306. A fixing hole 4 is provided on the top of the battery box 2. The fixing hole 4 on the outer side wall of the battery box 2 is adapted to the positioning bolt 305, thereby effectively fixing the first positioning block 304 to the outer side wall of the battery box 2, and thus effectively supporting the battery box 2.

[0019] Reference Figure 1-2 The bottom of the fixed frame 101 is fixedly connected to a support frame 102, and the four corners of the fixed frame 101 are fixedly connected to sliding seats 103. An adjusting rod 104 is slidably connected inside the sliding seat 103. A positioning groove 105 is opened on the outer wall of the sliding seat 103. A support leg 106 is fixedly connected to the bottom of the adjusting rod 104. The support is provided by multiple support frames 102 installed at the bottom of the fixed frame 101, which increases the bearing capacity of the support assembly 1. The adjusting rod 104 can move inside the sliding seat 103, thereby adjusting the position of the sliding seat 103 on the outer wall of the adjusting rod 104. The adjusting rod 104 drives the support leg 106 to extend and retract, which can effectively support the support assembly 1.

[0020] Working principle: By installing a first positioning block 304 and a second positioning block 306 around the battery box 2, and adjusting the positions of the first positioning block 304 and the second positioning block 306 with the moving seat 301 and the fixed seat 302, the first positioning block 304 and the second positioning block 306 are adapted to the size of the battery box 2. Under the separation of the partition rod 307, multiple battery boxes 2 can be stacked. The weight of the battery box 2 can be transferred to the inside of the support component 1 through the fixing component 3, which can effectively prevent the bottom battery box 2 from being deformed by gravity compression, thus effectively protecting the battery box 2.

[0021] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A multi-functional rack for shipping energy storage battery boxes, comprising a support assembly (1), characterized in that, The top of the support assembly (1) is fixedly connected to a fixing assembly (3), and a battery box (2) is provided inside the fixing assembly (3). The support assembly (1) includes a fixing frame (101), and the fixing assembly (3) includes a movable seat (301) bolted to the top of the fixing frame (101). A fixing seat (302) is fixedly connected inside the movable seat (301), and a fixing plate (303) is fixedly connected to the top of the fixing seat (302). A first positioning block (304) and a second positioning block (306) are bolted to the outer side wall of the fixing plate (303).

2. The multi-functional rack for shipping energy storage battery boxes according to claim 1, characterized in that, The outer wall of the fixing plate (303) is threaded with a positioning bolt (305), the adjacent surfaces of the second positioning block (306) and the first positioning block (304) are in contact with the battery box (2), and the end of the positioning bolt (305) near the battery box (2) is in contact with the battery box (2).

3. The multi-functional rack for shipping energy storage battery boxes according to claim 1, characterized in that, The top of the first positioning block (304) is fitted with a partition rod (307), and the top of the second positioning block (306) is threaded with a fixing bolt (308). The fixing bolt (308) is used to fix the second positioning block (306), the partition rod (307) and the first positioning block (304).

4. The multi-functional rack for shipping energy storage battery boxes according to claim 1, characterized in that, The top of the fixing frame (101) is threaded with an adjusting seat (309), and a positioning seat (310) is fixedly connected inside the adjusting seat (309). The positioning seat (310) is in contact with the battery box (2).

5. A multi-functional rack for shipping energy storage battery boxes according to claim 1, characterized in that, The battery box (2) is located between the first positioning block (304) and the second positioning block (306), and a fixing hole (4) is provided on the top of the battery box (2).

6. A multi-functional rack for shipping energy storage battery boxes according to claim 1, characterized in that, The bottom of the fixed frame (101) is fixedly connected to a support frame (102), and the four corners of the fixed frame (101) are fixedly connected to sliding seats (103). The sliding seats (103) are slidably connected to an adjusting rod (104). The outer side wall of the sliding seats (103) is provided with a positioning groove (105), and the bottom of the adjusting rod (104) is fixedly connected to a support leg (106).